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N14 抗 afamin 抗体 Fab:罕见的 V1 CDR 糖基化、晶体学重新测序、分子可塑性以及保守与热情建模。

The N14 anti-afamin antibody Fab: a rare V1 CDR glycosylation, crystallographic re-sequencing, molecular plasticity and conservative versus enthusiastic modelling.

机构信息

Division of Biological Chemistry, Medical University of Innsbruck, Innrain 80, 6020 Innsbruck, Austria.

Center for Proteomics, University of Rijeka, B. Branchetta 20, 51000 Rijeka, Croatia.

出版信息

Acta Crystallogr D Struct Biol. 2016 Dec 1;72(Pt 12):1267-1280. doi: 10.1107/S205979831601723X. Epub 2016 Nov 29.

Abstract

The monoclonal antibody N14 is used as a detection antibody in ELISA kits for the human glycoprotein afamin, a member of the albumin family, which has recently gained interest in the capture and stabilization of Wnt signalling proteins, and for its role in metabolic syndrome and papillary thyroid carcinoma. As a rare occurrence, the N14 Fab is N-glycosylated at Asn26L at the onset of the V1 antigen-binding loop, with the α-1-6 core fucosylated complex glycan facing out of the L1 complementarity-determining region. The crystal structures of two non-apparent (pseudo) isomorphous crystals of the N14 Fab were analyzed, which differ significantly in the elbow angles, thereby cautioning against the overinterpretation of domain movements upon antigen binding. In addition, the map quality at 1.9 Å resolution was sufficient to crystallographically re-sequence the variable V and V domains and to detect discrepancies in the hybridoma-derived sequence. Finally, a conservatively refined parsimonious model is presented and its statistics are compared with those from a less conservatively built model that has been modelled more enthusiastically. Improvements to the PDB validation reports affecting ligands, clashscore and buried surface calculations are suggested.

摘要

单克隆抗体 N14 被用作 ELISA 试剂盒中检测人糖蛋白 afamin 的抗体,afamin 是白蛋白家族的一员,最近因其在 Wnt 信号蛋白的捕获和稳定中的作用,以及在代谢综合征和甲状腺乳头状癌中的作用而受到关注。作为一种罕见的情况,N14 Fab 在 V1 抗原结合环开始时在 Asn26L 处发生 N-糖基化,α-1-6 核心岩藻糖基化复杂聚糖朝向 L1 互补决定区。分析了两个非明显(伪)同晶的 N14 Fab 晶体结构,它们在肘角上有显著差异,因此在抗原结合时要谨慎对待结构域运动的过度解释。此外,1.9 Å 分辨率的地图质量足以对可变 V 和 V 结构域进行晶体测序,并检测杂交瘤衍生序列中的差异。最后,提出了一个保守的精炼简约模型,并将其统计数据与更具活力地建模的保守性较低的模型进行了比较。建议对影响配体、碰撞评分和埋入表面计算的 PDB 验证报告进行改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fd9/5137224/58152cb1e07f/d-72-01267-fig1.jpg

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